DocumentCode
115639
Title
Fast nonsingular integral terminal sliding mode control for nonlinear dynamical systems
Author
Li Peng ; Ma Jianjun ; Zheng Zhiqiang ; Geng Lina
Author_Institution
Coll. of Mechatron. Eng. & Autom., Nat. Univ. of Defense Technol., Changsha, China
fYear
2014
fDate
15-17 Dec. 2014
Firstpage
4739
Lastpage
4746
Abstract
This paper presents a fast nonsingular integral terminal sliding mode control (FNITSMC) for a class of nonlinear systems. First, a novel fast nonsingular integral terminal sliding mode surface (FNITSMS) is designed by introducing power integral terms which contain a boundary-like structure. Next, by employing FNITSMS and the equivalent control technique, the FNITSMC is proposed to achieve the finite-time convergence of the system states. Compared with many existing works on terminal sliding mode control (TSMC), the proposed FNITSMC exhibits three attractive features: (i) can avoid the singularity problem without any constraint, and provide faster responses by tuning the parameters in FNITSMS; (ii) for constant or eventually constant disturbances, zero steady-state error can be achieved when a boundary layer is used to alleviate chattering; (iii) the switching gain is only required to be designed greater than the bound of the disturbance. Finally, Simulation results of both the numerical and application examples show the effectiveness of the proposed control method.
Keywords
nonlinear dynamical systems; variable structure systems; FNITSMC; boundary like structure; finite-time convergence; nonlinear dynamical systems; novel fast nonsingular integral terminal sliding mode surface; power integral terms; steady-state error; Asymptotic stability; Convergence; Nonlinear systems; Sliding mode control; Steady-state; Switches; Vectors; Nonsingular terminal sliding mode; equivalent control; fast convergence; integral sliding surface;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control (CDC), 2014 IEEE 53rd Annual Conference on
Conference_Location
Los Angeles, CA
Print_ISBN
978-1-4799-7746-8
Type
conf
DOI
10.1109/CDC.2014.7040128
Filename
7040128
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